This research aims to develop biosensors that can effectively sense and respond to autoregulatory signals in Streptomyces species.
Developed autoregulator-based biosensors for monitoring genetic circuits.
Assessed the biosensor's sensitivity and robustness in response to quorum-sensing signals.
Biosensors showed ultrasensitive responses to autoregulatory signals.
Demonstrated potential adaptivity for regulating genetic circuits effectively.
Abstract
for NP regulation. Additionally, these autoregulator-based biosensors provide ultrasensitive, robust-output platforms that can be adapted for quorum-sensing-regulated genetic circuits.